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Development of a Comprehensive Osteochondral Allograft MRI Scoring System (OCAMRISS) With Histopathologic, Micro–Computed Tomography, and Biomechanical Validation

OBJECTIVE: To describe and apply a semiquantitative MRI scoring system for multifeature analysis of cartilage defect repair in the knee by osteochondral allografts and to correlate this scoring system with histopathologic, micro–computed tomography (µCT), and biomechanical reference standards using...

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Autores principales: Chang, Eric Y., Pallante-Kichura, Andrea L., Bae, Won C., Du, Jiang, Statum, Sheronda, Wolfson, Tanya, Gamst, Anthony C., Cory, Esther, Amiel, David, Bugbee, William D., Sah, Robert L., Chung, Christine B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: SAGE Publications 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3904392/
https://www.ncbi.nlm.nih.gov/pubmed/24489999
http://dx.doi.org/10.1177/1947603513514436
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author Chang, Eric Y.
Pallante-Kichura, Andrea L.
Bae, Won C.
Du, Jiang
Statum, Sheronda
Wolfson, Tanya
Gamst, Anthony C.
Cory, Esther
Amiel, David
Bugbee, William D.
Sah, Robert L.
Chung, Christine B.
author_facet Chang, Eric Y.
Pallante-Kichura, Andrea L.
Bae, Won C.
Du, Jiang
Statum, Sheronda
Wolfson, Tanya
Gamst, Anthony C.
Cory, Esther
Amiel, David
Bugbee, William D.
Sah, Robert L.
Chung, Christine B.
author_sort Chang, Eric Y.
collection PubMed
description OBJECTIVE: To describe and apply a semiquantitative MRI scoring system for multifeature analysis of cartilage defect repair in the knee by osteochondral allografts and to correlate this scoring system with histopathologic, micro–computed tomography (µCT), and biomechanical reference standards using a goat repair model. DESIGN: Fourteen adult goats had 2 osteochondral allografts implanted into each knee: one in the medial femoral condyle and one in the lateral trochlea. At 12 months, goats were euthanized and MRI was performed. Two blinded radiologists independently rated 9 primary features for each graft, including cartilage signal, fill, edge integration, surface congruity, calcified cartilage integrity, subchondral bone plate congruity, subchondral bone marrow signal, osseous integration, and presence of cystic changes. Four ancillary features of the joint were also evaluated, including opposing cartilage, meniscal tears, synovitis, and fat-pad scarring. Comparison was made with histologic and µCT reference standards as well as biomechanical measures. Interobserver agreement and agreement with reference standards was assessed. Cohen’s κ, Spearman’s correlation, and Kruskal-Wallis tests were used as appropriate. RESULTS: There was substantial agreement (κ > 0.6, P < 0.001) for each MRI feature and with comparison against reference standards, except for cartilage edge integration (κ = 0.6). There was a strong positive correlation between MRI and reference standard scores (ρ = 0.86, P < 0.01). Osteochondral allograft MRI scoring system was sensitive to differences in outcomes between the types of allografts. CONCLUSIONS: We have described a comprehensive MRI scoring system for osteochondral allografts and have validated this scoring system with histopathologic and µCT reference standards as well as biomechanical indentation testing.
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spelling pubmed-39043922015-01-01 Development of a Comprehensive Osteochondral Allograft MRI Scoring System (OCAMRISS) With Histopathologic, Micro–Computed Tomography, and Biomechanical Validation Chang, Eric Y. Pallante-Kichura, Andrea L. Bae, Won C. Du, Jiang Statum, Sheronda Wolfson, Tanya Gamst, Anthony C. Cory, Esther Amiel, David Bugbee, William D. Sah, Robert L. Chung, Christine B. Cartilage Article OBJECTIVE: To describe and apply a semiquantitative MRI scoring system for multifeature analysis of cartilage defect repair in the knee by osteochondral allografts and to correlate this scoring system with histopathologic, micro–computed tomography (µCT), and biomechanical reference standards using a goat repair model. DESIGN: Fourteen adult goats had 2 osteochondral allografts implanted into each knee: one in the medial femoral condyle and one in the lateral trochlea. At 12 months, goats were euthanized and MRI was performed. Two blinded radiologists independently rated 9 primary features for each graft, including cartilage signal, fill, edge integration, surface congruity, calcified cartilage integrity, subchondral bone plate congruity, subchondral bone marrow signal, osseous integration, and presence of cystic changes. Four ancillary features of the joint were also evaluated, including opposing cartilage, meniscal tears, synovitis, and fat-pad scarring. Comparison was made with histologic and µCT reference standards as well as biomechanical measures. Interobserver agreement and agreement with reference standards was assessed. Cohen’s κ, Spearman’s correlation, and Kruskal-Wallis tests were used as appropriate. RESULTS: There was substantial agreement (κ > 0.6, P < 0.001) for each MRI feature and with comparison against reference standards, except for cartilage edge integration (κ = 0.6). There was a strong positive correlation between MRI and reference standard scores (ρ = 0.86, P < 0.01). Osteochondral allograft MRI scoring system was sensitive to differences in outcomes between the types of allografts. CONCLUSIONS: We have described a comprehensive MRI scoring system for osteochondral allografts and have validated this scoring system with histopathologic and µCT reference standards as well as biomechanical indentation testing. SAGE Publications 2014-01 /pmc/articles/PMC3904392/ /pubmed/24489999 http://dx.doi.org/10.1177/1947603513514436 Text en © The Author(s) 2013
spellingShingle Article
Chang, Eric Y.
Pallante-Kichura, Andrea L.
Bae, Won C.
Du, Jiang
Statum, Sheronda
Wolfson, Tanya
Gamst, Anthony C.
Cory, Esther
Amiel, David
Bugbee, William D.
Sah, Robert L.
Chung, Christine B.
Development of a Comprehensive Osteochondral Allograft MRI Scoring System (OCAMRISS) With Histopathologic, Micro–Computed Tomography, and Biomechanical Validation
title Development of a Comprehensive Osteochondral Allograft MRI Scoring System (OCAMRISS) With Histopathologic, Micro–Computed Tomography, and Biomechanical Validation
title_full Development of a Comprehensive Osteochondral Allograft MRI Scoring System (OCAMRISS) With Histopathologic, Micro–Computed Tomography, and Biomechanical Validation
title_fullStr Development of a Comprehensive Osteochondral Allograft MRI Scoring System (OCAMRISS) With Histopathologic, Micro–Computed Tomography, and Biomechanical Validation
title_full_unstemmed Development of a Comprehensive Osteochondral Allograft MRI Scoring System (OCAMRISS) With Histopathologic, Micro–Computed Tomography, and Biomechanical Validation
title_short Development of a Comprehensive Osteochondral Allograft MRI Scoring System (OCAMRISS) With Histopathologic, Micro–Computed Tomography, and Biomechanical Validation
title_sort development of a comprehensive osteochondral allograft mri scoring system (ocamriss) with histopathologic, micro–computed tomography, and biomechanical validation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3904392/
https://www.ncbi.nlm.nih.gov/pubmed/24489999
http://dx.doi.org/10.1177/1947603513514436
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